Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam

Aiming at the problem of gas pre-drainage in high gas and low permeability coal seam,the strengthen technology of coal seam gas extraction was put forward which is the system of combined pipeline to lift the negative pressure and intensive large diameter drill-hole along seam.The extraction principl...

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Main Authors: Xie Shengrong, Yang Bo, Zhang Qing, Song Haizheng, Suo Haixiang, Zhang Tao
Format: Article
Language:English
Published: Emergency Management Press 2019-02-01
Series:矿业科学学报
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/article/id/194
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author Xie Shengrong
Yang Bo
Zhang Qing
Song Haizheng
Suo Haixiang
Zhang Tao
author_facet Xie Shengrong
Yang Bo
Zhang Qing
Song Haizheng
Suo Haixiang
Zhang Tao
author_sort Xie Shengrong
collection DOAJ
description Aiming at the problem of gas pre-drainage in high gas and low permeability coal seam,the strengthen technology of coal seam gas extraction was put forward which is the system of combined pipeline to lift the negative pressure and intensive large diameter drill-hole along seam.The extraction principle of realizing the permeable increasing in all zone by intensive large diameter drill-hole along seam was explained.According to the continuity liquid flow equation and energy equation,the expression of liquid energy changes was established to get liquid energy gradient lines in section competent pipeline.Combined with the “negative pressure-flow” characteristic curve of pre-drainage gas drill-hole,the mechanism of increase the negative pressure and extraction scalar through combined pipeline was clarified and the parameters of strengthen extraction technology in coal seam was confirmed by practical experience.The practice showed that this technical effect on governance gas was remarkable,the gas extraction rate in working face was above 55% and the production capacity increased from 1.2 Mt/a to 1.8 Mt/a.The upper corner gas concentration was under the safety standard,and thus the safety and efficiently mining in complicated geological conditions was realized.
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spelling doaj.art-9dac58c486cd4c7f887a916fb5562a8e2022-12-22T02:52:59ZengEmergency Management Press矿业科学学报2096-21932019-02-0141344010.19606/j.cnki.jmst.2019.01.00520190105Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seamXie Shengrong0Yang Bo1Zhang Qing2Song Haizheng3Suo Haixiang4Zhang Tao5College of Resources and Safety Engineering, China University of Mining and Technology, Beijing 100083, ChinaCollege of Resources and Safety Engineering, China University of Mining and Technology, Beijing 100083, ChinaCollege of Resources and Safety Engineering, China University of Mining and Technology, Beijing 100083, ChinaCollege of Resources and Safety Engineering, China University of Mining and Technology, Beijing 100083, ChinaCollege of Resources and Safety Engineering, China University of Mining and Technology, Beijing 100083, ChinaCollege of Resources and Safety Engineering, China University of Mining and Technology, Beijing 100083, ChinaAiming at the problem of gas pre-drainage in high gas and low permeability coal seam,the strengthen technology of coal seam gas extraction was put forward which is the system of combined pipeline to lift the negative pressure and intensive large diameter drill-hole along seam.The extraction principle of realizing the permeable increasing in all zone by intensive large diameter drill-hole along seam was explained.According to the continuity liquid flow equation and energy equation,the expression of liquid energy changes was established to get liquid energy gradient lines in section competent pipeline.Combined with the “negative pressure-flow” characteristic curve of pre-drainage gas drill-hole,the mechanism of increase the negative pressure and extraction scalar through combined pipeline was clarified and the parameters of strengthen extraction technology in coal seam was confirmed by practical experience.The practice showed that this technical effect on governance gas was remarkable,the gas extraction rate in working face was above 55% and the production capacity increased from 1.2 Mt/a to 1.8 Mt/a.The upper corner gas concentration was under the safety standard,and thus the safety and efficiently mining in complicated geological conditions was realized.http://kykxxb.cumtb.edu.cn/article/id/194low permeabilitypre-drainage in coal seamintensive drill-hole along seamenergy gradient lineslift pressure system with combined pipeline
spellingShingle Xie Shengrong
Yang Bo
Zhang Qing
Song Haizheng
Suo Haixiang
Zhang Tao
Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam
矿业科学学报
low permeability
pre-drainage in coal seam
intensive drill-hole along seam
energy gradient lines
lift pressure system with combined pipeline
title Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam
title_full Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam
title_fullStr Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam
title_full_unstemmed Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam
title_short Research on lift pressure system with combined pipeline and intensive drill-hole gas drainage along the layer in low permeability coal seam
title_sort research on lift pressure system with combined pipeline and intensive drill hole gas drainage along the layer in low permeability coal seam
topic low permeability
pre-drainage in coal seam
intensive drill-hole along seam
energy gradient lines
lift pressure system with combined pipeline
url http://kykxxb.cumtb.edu.cn/article/id/194
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